Light-curable (UV crosslinking) possible! UV-curable elastomer with excellent heat resistance and adhesion.
The "Styrene-Isoprene-Styrene (SIS) Block Copolymer System" is a material that combines the strong adhesive properties of hot melt SIS systems with the heat resistance of solvent-based SIS rubber systems. Compared to solvent-based systems, it allows for faster and more efficient processing and production in adhesive applications. With heat resistance comparable to acrylic-based adhesives and superior adhesion strength, it is expected to be applicable in automotive uses (such as securing interior parts) and construction materials. **Features** - Peel and adhesive performance suitable for adhesive applications - Heat resistance demonstrated in shear failure temperature tests is 120-150°C (depending on the level of light curing) - Low-energy, low-viscosity hot melt processing is possible - Compared to solvent-based systems, it enables faster and more efficient processing and production in adhesive applications - Particularly lower VOC levels compared to solvent-based SIS rubber systems *For more details, please refer to the PDF document or feel free to contact us.*
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For more details, please refer to the PDF document or feel free to contact us.
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【Usage】 ■ Automotive applications (such as fixing interior parts) and building materials applications *For more details, please refer to the PDF document or feel free to contact us.
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Our company, yet2com, is an expert in connecting open innovation (OI) to corporate innovation in line with our clients' business growth strategies. Founded in 1999 in Boston, USA (yet2.com Inc.), we have been providing OI services to manufacturers around the world for over 20 years. We have a proven track record of over 10 years in conducting technology research for not only corporations but also U.S. government agencies. With our solid services and methodologies, we lead client companies to successful open innovation. If you are wondering what kind of research is progressing in this technological field, whether there are materials with such characteristics, or if there are other applications for a newly developed material intended for a specific purpose, please feel free to contact us.